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Marker assisted selection (MAS) for developing powdery mildew resistant pea cultivars

机译:标记辅助选择(MAS)用于开发抗白粉病豌豆品种

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摘要

In this contribution we review the state of the art for genetic resistance to powdery mildew, caused by Erysiphe pisi, in pea (Pisum sativum L.) and potential use of marker-assisted selection (MAS) for developing disease resistant cultivars. Powdery mildew is important in many production regions worldwide and reduces yield and crop quality when present in epidemic proportions. Although genetic resistance to powdery mildew is available (er1 and er2) and has been durable since its characterization in 1969, recently a new dominant gene (Er3) has been reported in Pisum fulvum, a wild relative of pea that is different from previously reported er1 and er2. The efficacy of these genes may be at risk from the point of view of new pathotypes and pathogens. Erysiphe trifolii has been reported that was not previously known as a pathogen of pea powdery mildew. A continued search for new and diverse resistant sources remains a priority in pea breeding and special emphasis should be paid to selection of resistance that will prolong durability of existing resistance genes. Marker assisted selection is a new emerging approach for target breeding that has been intensively employed especially in cereals and has recently got popularity among legume breeders. With the advancement of genomic research, especially related to quantitative traits loci, the MAS is potentially anticipated future technique for routine plant breeding that is scarce in legumes at present. In pea, various DNA markers have been reported linked to er1, er2 and Er3 at varying distances in different mapping populations that are currently being used in breeding programs. Currently MAS of single gene is the most powerful approach and successes have been witnessed. If single marker is not close enough to the gene of interest then two flanking markers are considerably utilized to improve the correct identification that is being successfully employed in MAS for powdery mildew resistance in pea.
机译:在这项贡献中,我们回顾了豌豆(Pisum sativum L.)对豌豆白粉病引起的白粉病遗传抗性的最新技术,以及潜在的利用标记辅助选择(MAS)开发抗病品种。白粉病在全世界许多生产地区都很重要,当以流行比例出现时,会降低产量和作物品质。尽管可获得对白粉病的遗传抗性(er1和er2),并且自1969年被鉴定以来就具有持久性,但最近在豌豆(Pisum fulvum)中报道了一个新的显性基因(Er3),该豌豆是野生豌豆,与先前报道的er1不同。和er2。从新的病原体和病原体的角度来看,这些基因的功效可能处于危险之中。已有报道称Erysiphe trifolii是豌豆白粉病的病原体。继续寻找新的和多样化的抗性来源仍然是豌豆育种的优先事项,应特别重视选择抗性,以延长现有抗性基因的持久性。标记辅助选择是一种新的靶标育种新方法,特别是在谷物中广泛使用,最近在豆类育种家中很受欢迎。随着基因组学研究的发展,特别是与数量性状基因座有关的基因组研究,MAS有望成为目前豆科植物稀缺的常规植物育种的未来技术。在豌豆中,已报道了在育种计划中使用的不同作图种群中,不同距离的,与er1,er2和Er3相关的各种DNA标记。目前,单一基因的MAS是最有效的方法,并且已经见证了成功。如果单个标记与目标基因的距离不够近,则将大量利用两个侧翼标记来改进正确的鉴定,该鉴定已成功用于MAS中,以防豌豆中的白粉病。

著录项

  • 来源
    《Euphytica》 |2012年第3期|p.593-607|共15页
  • 作者

    Abdul Ghafoor; Kevin McPhee;

  • 作者单位

    Plant Genetic Resources Program, Institute of Agri Biotechnology and Genetic Resources, National Agricultural Research Centre, Park Road, Islamabad, Pakistan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pisum sativum; er1; er2; Er3; Resistant sources;

    机译:豌豆;er1;er2;Er3;抗性来源;

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